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Journal #870
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Neural Regeneration Research
22
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Neural Regeneration Research
122044
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model
Li F
Neural Regeneration Research
2024; 0:
120703
Synapses and dendritic spines are eliminated in the primary visual cortex of mice subjected to chronic intraocular pressure elevation
Zhang X
Neural Regeneration Research
2024; 0:
124372
Single-cell RNA sequencing analysis of the retina under acute high intraocular pressure
Wang S; Tong S
Neural Regeneration Research
2024; 19: 2522-2531
122044
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model
Li Z
Neural Regeneration Research
2024; 0:
120703
Synapses and dendritic spines are eliminated in the primary visual cortex of mice subjected to chronic intraocular pressure elevation
Li D; Zeng W
Neural Regeneration Research
2024; 0:
124372
Single-cell RNA sequencing analysis of the retina under acute high intraocular pressure
Jin X
Neural Regeneration Research
2024; 19: 2522-2531
122044
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model
Li S
Neural Regeneration Research
2024; 0:
120703
Synapses and dendritic spines are eliminated in the primary visual cortex of mice subjected to chronic intraocular pressure elevation
Huang Y
Neural Regeneration Research
2024; 0:
122044
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model
Zhou H
Neural Regeneration Research
2024; 0:
124372
Single-cell RNA sequencing analysis of the retina under acute high intraocular pressure
Li N; Dang P
Neural Regeneration Research
2024; 19: 2522-2531
120703
Synapses and dendritic spines are eliminated in the primary visual cortex of mice subjected to chronic intraocular pressure elevation
Zhan Z
Neural Regeneration Research
2024; 0:
122044
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model
Guo Y
Neural Regeneration Research
2024; 0:
120703
Synapses and dendritic spines are eliminated in the primary visual cortex of mice subjected to chronic intraocular pressure elevation
Zhang Y
Neural Regeneration Research
2024; 0:
124372
Single-cell RNA sequencing analysis of the retina under acute high intraocular pressure
Sui Y
Neural Regeneration Research
2024; 19: 2522-2531
122044
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model
Wang Y
Neural Regeneration Research
2024; 0:
124372
Single-cell RNA sequencing analysis of the retina under acute high intraocular pressure
Liu Y
Neural Regeneration Research
2024; 19: 2522-2531
122044
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model
Lei B
Neural Regeneration Research
2024; 0:
120703
Synapses and dendritic spines are eliminated in the primary visual cortex of mice subjected to chronic intraocular pressure elevation
Hu Q
Neural Regeneration Research
2024; 0:
124372
Single-cell RNA sequencing analysis of the retina under acute high intraocular pressure
Wang D
Neural Regeneration Research
2024; 19: 2522-2531
122044
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model
Miao Y
Neural Regeneration Research
2024; 0:
120703
Synapses and dendritic spines are eliminated in the primary visual cortex of mice subjected to chronic intraocular pressure elevation
Huang L; Yu M
Neural Regeneration Research
2024; 0:
122044
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model
Wang Z
Neural Regeneration Research
2024; 0:
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